孔隙空气逃逸和水泥溶解对花岩残留土壤分解的影响,中国东南部
Liping Liao1,2,3,4, Dongming Yi1,2,3,4, Yinghui Tan1,2,3,4
1College of Civil Engineering and Architecture, Guangxi University, Nanning, 530004, China.
Scientific reports
|March 27, 2025
概括
花岩残留土壤分解是由逃出的孔空气和水泥物质溶解驱动的. 最初的水分含量显著影响分解模式和速度,而压缩效应则取决于水分水平.
科学领域:
- 地质技术工程 地质技术工程
- 土壤科学 土壤科学
- 环境地质 环境地质学
背景情况:
- 中国南部和东南部的花岩残余土壤表现出显著的分解.
- 这种解体导致崩侵蚀和浅地滑坡.
- 缺少在分解过程中对孔空气逃逸和水泥物质溶解的实时监测.
研究的目的:
- 开发和使用新型仪器实时监测毛孔空气泄漏和土壤分解.
- 在不同的条件下分析花岩残余土壤的分解模式和速度.
- 为了阐明孔隙空气逃逸和土壤分解中的水泥物质溶解的机制.
主要方法:
- 部署两种新开发的实时监控工具.
- 在分解过程中观察孔隙空气体积变化和溶液变化.
- 分析不同压缩水平和初始水分含量下的残留土壤分解.
主要成果:
- 最初的水分含量极大地影响了分解模式,完成时间和速度.
- 增加压缩对分解速度和时间的影响取决于初始水分含量.
- 孔空气逃逸和固体物质溶解被确定为整个分解过程中的关键现象.
结论:
- 压缩,逃出毛孔空气的排斥应力超过毛细血管力是花岩残留土壤解体的主要原因.
- 了解这些机制对于减轻受影响地区的侵蚀和山体滑坡风险至关重要.
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